人类死后大脑单细胞的基因表达谱

Lixia Lu , Frauke Neff , Zhou Dun , Bernhard Hemmer , Wolfgang H Oertel , Jürgen Schlegel , Andreas Hartmann
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引用次数: 23

摘要

对死后人类脑组织的研究仍然是理解许多中枢神经系统疾病和验证实验研究中获得的数据的基础。然而,到目前为止,来自人类死后大脑的细胞亚群的基因表达谱受到几个技术缺陷的阻碍。在这里,我们描述了一种允许从单个神经元产生mRNA表达谱的方法。采用免疫激光捕获显微镜(LCM)对中脑黑质、中央灰质和腹侧被盖区等不同区域的多巴胺能神经元进行了鉴定和分离。使用改进的RNA指纹图谱从微解剖细胞中生成表达谱。使用这种方法,我们能够从表型特异性单个神经元中以高分辨率生成特异性RNA指纹。从凝胶中分离出多态性片段,利用基因特异性引物对和杂交探针进行实时荧光定量PCR验证差异基因表达。本文描述的方法易于使用且可靠,可用于分析人类死后大脑中单细胞水平的基因表达。因此,对中枢神经系统疾病的分子发病机制开辟新的见解是有价值的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Gene expression profiles derived from single cells in human postmortem brain

The study of postmortem human brain tissue remains the basis for the understanding of many CNS disorders and to verify data obtained in experimental studies. So far, however, gene expression profiling in cellular sub-populations derived from human postmortem brain was hampered by several technical drawbacks. Here, we describe a method that allows the generation of mRNA expression profiles from single neurons. Dopaminergic neurons from different midbrain areas including substantia nigra, central gray substance and ventral tegmental area were identified and isolated by immuno-laser capture microscopy (LCM). Expression profiles were generated from microdissected cells using a modified RNA fingerprinting protocol. Using this approach, we were able to generate specific RNA fingerprints at a high resolution from phenotype-specific single neurons. Polymorphic fragments were isolated from gels and differential gene expression was confirmed by real-time PCR using gene-specific primer pairs and hybridization probes. The method described here is easy to use and reliable for profiling gene expression at the single cell level in human postmortem brain. It could therefore be valuable to open new insights into the molecular pathogenesis of CNS disorders.

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